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Electronic driver with amplitude and quality factor control to adjust the response of quartz tuning fork sensors in atomic force microscopy applications

机译:具有振幅和品质因数控制的电子驱动器,可调节原子力显微镜应用中石英音叉传感器的响应

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摘要

Quartz tuning fork-based sensors are self-sensing probes that are gaining popularity in atomic force microscopy. They do not need a laser-photodiode system and they have a higher quality factor in liquid than standard cantilevers. However, the main limitation of tuning fork probes is that they are usually handmade because no commercial probes suitable for a wide range of experiments are available. The handmade devices show considerable variation in dynamic response, thereby hindering the repeatability of experiments. To overcome this problem, here we develop an electronic driver to simultaneously control the quality factor (Q) and the oscillation amplitude (A) of the device. The driver provides clear advantages over classical Q-control modules where the amplitude of oscillation is modified when the Q factor is changed. Direct measurements on a commercial interferometer showed that the effective Q factor can be adjusted to experimental requirements while maintaining the mechanical amplitude of oscillation constant. Experimental amplitude vs. distance curves confirm that our driver achieves an equivalent dynamic response from distinct handmade sensors (with varying mechanical characteristics) by means of electronic adjustment. The driver is a simple but effective method to ensure the same measurement conditions with a range of quartz tuning fork probes and also the reliability and repeatability of experiments.
机译:基于石英音叉的传感器是自感测探针,在原子力显微镜中越来越受欢迎。它们不需要激光光电二极管系统,并且在液体中的质量因子比标准悬臂梁更高。但是,音叉探针的主要局限在于它们通常是手工制作的,因为没有适用于各种实验的商业探针。手工装置在动态响应方面显示出很大的变化,从而阻碍了实验的可重复性。为了克服这个问题,我们在这里开发一种电子驱动器,以同时控制设备的品质因数(Q)和振荡幅度(A)。与传统的Q控制模块相比,该驱动器具有明显的优势,在传统的Q控制模块中,当改变Q因子时会改变振荡幅度。在商用干涉仪上的直接测量表明,可以将有效Q因子调整到实验要求,同时保持振荡的机械振幅恒定。实验幅度与距离的关系曲线证实,我们的驾驶员可以通过电子调节从不同的手工传感器(具有变化的机械特性)获得同等的动态响应。该驱动器是一种简单而有效的方法,可确保使用一系列石英音叉探头确保相同的测量条件,以及确保实验的可靠性和可重复性。

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